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KMID : 0981820110310010037
Korean Journal of Laboratory Medicine
2011 Volume.31 No. 1 p.37 ~ p.43
Application of Single-nucleotide Polymorphism and Mycobacterial Interspersed Repetitive Units-Variable Number of Tandem Repeats Analyses to Clinical Mycobacterium tuberculosis Isolates from Korea
Choi Go-Eun

Jang Mi-Hee
Cho Hyun-Jung
Lee Sun-Min
Yi Jong-Youn
Lee Eun-Yup
Chang Chul-Hun L.
Kim Yeong-Dae
Kim Moon-Bum
Abstract
Background: Single-nucleotide polymorphism (SNP) analysis is a powerful strategy for large-scale molecular population studies examining phylogenetic relationships among bacterial strains. Mycobacterial interspersed repetitive units-variable number of tandem repeats (MIRU-VNTR) can be easily digitized to share data among laboratories. This study applied SNP and MIRU-VNTR analyses for molecular strain typing of Mycobacterium tuberculosis isolates collected throughout Korea.

Methods: We studied 102 clinical M. tuberculosis isolates, including 6 paired strains, collected from 11 university hospitals in Korea in 2008 and 2009. SNPs were detected using hairpin primer assays, and then, MIRU-VNTR analysis was performed.

Results: Thirty-five SNPs contained polymorphisms that helped differentiate the 96 tested isolates. The isolates were classified into 15 clusters. The Beijing family strains were distributed within closely related clusters in the SNP dendrogram. For MIRU-VNTR analysis, the 96 isolates were divided into 12 groups. The discriminatory index in 8 of these groups (MIRU-10, -23, -26, and -31; ETR-A, -B, -C, and -F) was high (Hunter?Gaston diversity index > 0.6). Unlike the SNP method, MIRU-VNTR analysis did not identify any notable localizations of Beijing or non-Beijing family isolates in specific clusters.

Conclusions: SNP and MIRU-VNTR analyses are surrogate molecular strain-typing methods for M. tuberculosis in Korea where Beijing family isolates are predominant
KEYWORD
Mycobacterium tuberculosis, Single-nucleotide polymorphism, Mycobacterial interspersed repetitive units-variable number of tandem repeats
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